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首页> 外文期刊>Genetica >Lack of response to artificial selection on developmental stability of partial wing shape components in Drosophila melanogaster
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Lack of response to artificial selection on developmental stability of partial wing shape components in Drosophila melanogaster

机译:对果蝇部分翼形组件发育稳定性的人工选择缺乏响应

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摘要

Developmental stability, the ability of organisms to buffer their developmental processes against developmental noise is often evaluated with fluctuating asymmetry (FA). Natural genetic variation in FA has been investigated using Drosophila wings as a model system and the recent estimation of the heritability of wing shape FA was as large as 20 %. Because natural genetic variation in wing shape FA was found to localize in a partial component of the wings, heritable variation in specific parts of the wings might be responsible for FA estimation based on the whole wing shape. In this study, we quantified the shape of three partial components of the wings, and estimated the heritability of the wing shape FA based on artificial selections. As a result, FA values for the partial wing shape components did not respond to artificial selections and the heritability scores estimated were very small. These results indicate that natural additive genetic variation in FA of partial wing components was very small compared with that in a complex wing trait.
机译:发育稳定性,即生物对发育过程进行缓冲以抵抗发育噪声的能力,通常通过波动不对称性(FA)进行评估。已经使用果蝇机​​翼作为模型系统研究了FA中的自然遗传变异,最近对机翼形状FA的遗传力的估计高达20%。由于发现机翼形状FA的自然遗传变异位于机翼的一部分中,因此机翼特定部分的遗传变异可能是根据整个机翼形状估算FA的原因。在这项研究中,我们量化了机翼的三个部分组成部分的形状,并基于人工选择估计了机翼形状FA的遗传力。结果,部分机翼形状组件的FA值对人工选择没有响应,估计的遗传力得分非常小。这些结果表明,与复杂机翼性状相比,部分机翼部分的脂肪酸的自然加性遗传变异非常小。

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